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Ferroelectric β-crystalline phase formation and property enhancement in polydopamine modified BaTiO_3/poly (vinylidene fluoride-trifluoroethylene) nanocomposite films

机译:聚多巴胺修饰的BaTiO_3 /聚偏氟乙烯-三氟乙烯纳米复合薄膜中铁电β晶相的形成和性能增强

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摘要

Piezopolymer poly(vinylidene fluoride-trifluoroethylene) (PVDF-TrFE) films doped with BaTiO3 (BT) and polydopamine coated BT (BT-Pdop) nanoparticles were prepared by spin-coating method. Polydopamine modifies the interfaces of inorganic BT nanoparticles and PVDF-TrFE matrix with its polar hydroxyl groups, enhancing the piezoelectric beta-phase. BT-Pdop nanoparticles were obtained in pH 8.5 buffer solution. For ferroelectric PVDF-TrFE, the favorable piezoelectric property comes from its ferroelectricity. Therefore, we studied the ferroelectric property of the nanocomposite films. The nanocomposite thin films possess better ferroelectric property than the pure PVDF-TrFE thin films, as demonstrated by the ferroelectric hysteresis curves. The remanent polarizations are 13.59 and 13.94 mu C/cm(2) after the doping of 1.0 wt% BT and 1.0 wt% BT-Pdop, respectively, which are about twice that of neat PVDF-TrFE. The piezoelectric beta-ferroelectric phase increases with doping, according to X-Ray Diffraction analysis. In addition, the images of polarized optical microscopy and atomic force microscopy also reveal significant enhancement in crystallinity. The neat PVDF-TrFE is a semicrystalline polymer and the size of crystalline spherulites increases with the addition of BT and BT-Pdop nanoparticles. However, even the crystallinity of PVDF-TrFE considerably improved with polydopamine interfacial modification of BT, the increase of remanent polarization due to Pdop is only marginal. We infer that there are other defects at interfaces of BT-Pdop doped PVDF-TrFE nanocomposites which counteract the beneficial effect of the polar OH of polydopamine. Considerable enhancement on ferroelectric property of BT-Pdop doped PVDF-TrFE nanocomposites is expected after these issues are addressed.
机译:通过旋涂法制备了掺杂有BaTiO3(BT)和聚多巴胺涂层的BT(BT-Pdop)纳米粒子的压电聚合物聚偏二氟乙烯-三氟乙烯(PVDF-TrFE)薄膜。聚多巴胺通过其极性羟基修饰无机BT纳米颗粒和PVDF-TrFE基质的界面,从而增强了压电β相。在pH 8.5缓冲溶液中获得BT-Pdop纳米颗粒。对于铁电PVDF-TrFE,良好的压电特性来自其铁电。因此,我们研究了纳米复合膜的铁电性能。如铁电磁滞曲线所示,纳米复合薄膜比纯PVDF-TrFE薄膜具有更好的铁电性能。掺杂1.0 wt%BT和1.0 wt%BT-Pdop后,剩余极化分别为13.59和13.94μC / cm(2),约为纯PVDF-TrFE的两倍。根据X射线衍射分析,压电β铁电相随掺杂而增加。另外,偏振光学显微镜和原子力显微镜的图像也显示出结晶度的显着提高。纯净的PVDF-TrFE是一种半结晶聚合物,并且随着BT和BT-Pdop纳米颗粒的添加,结晶球晶的尺寸会增加。但是,即使用聚多巴胺对BT进行界面修饰,PVDF-TrFE的结晶度也得到了显着改善,但由于Pdop引起的剩余极化的增加只是微不足道的。我们推断在BT-Pdop掺杂的PVDF-TrFE纳米复合材料的界面处还有其他缺陷,这些缺陷抵消了聚多巴胺的极性OH的有益作用。在解决了这些问题之后,有望大大提高BT-Pdop掺杂的PVDF-TrFE纳米复合材料的铁电性能。

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